Natural Frequency Analysis for Hydropower Structure

A dam normally serves the main purpose of retaining water. However, the uncertainties vibration affected from the internal and external sources of the dam such as the flow of water vibration of the hydropower mechanical machine and other related sources has increased the insecurity of the dam struct...

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Main Authors: Radzi M.R., Zawawi M.H., Yusairah W.N., Mazlan A.Z.A., Abas A., Zainol M.R.R.M.A.
Other Authors: 57204677038
Format: Book Chapter
Published: Springer 2023
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spelling my.uniten.dspace-258192023-05-29T16:14:47Z Natural Frequency Analysis for Hydropower Structure Radzi M.R. Zawawi M.H. Yusairah W.N. Mazlan A.Z.A. Abas A. Zainol M.R.R.M.A. 57204677038 39162217600 57204798671 57216895962 56893346700 57193313971 A dam normally serves the main purpose of retaining water. However, the uncertainties vibration affected from the internal and external sources of the dam such as the flow of water vibration of the hydropower mechanical machine and other related sources has increased the insecurity of the dam structure. In this study, one of the oldest hydroelectric dams in Malaysia which are Chenderoh Dam in Kuala Kangsar, Perak is taken to analyze and discuss the structural dynamic analysis. The analysis has been investigated on the sector gate, right bank, intake and bottom outlet section of the dam structure. The actual size of structures (1:1) for each section has been modeled into the CAD software based on real build-in materials. Finite element (FE) model is constructed with the required boundary condition and meshing sensitivity analysis. From the result, the natural frequency values and mode of shapes are determined for all the section but, only significant value will be shown in this paper. The highest value of natural frequency occurred is 5.09�Hz at sector gate, 52.3�Hz at left bank, 11.73�Hz at right bank, 2.76�Hz at intake and 9.00�Hz at bottom outlet. In addition, from the frequency response friction (FRF) graphs show the highest deflection frequently occurred at x-axis direction for sector gate, right bank, bottom outlet, left bank and intake. All of these values must be taken into consideration before any failure happens at the dam. � 2020, Springer Nature Singapore Pte Ltd. Final 2023-05-29T08:14:47Z 2023-05-29T08:14:47Z 2020 Book Chapter 10.1007/978-981-15-1971-0_51 2-s2.0-85076752609 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85076752609&doi=10.1007%2f978-981-15-1971-0_51&partnerID=40&md5=f8c009c1d2aa6a10c17ad65bc15c4271 https://irepository.uniten.edu.my/handle/123456789/25819 511 519 Springer Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description A dam normally serves the main purpose of retaining water. However, the uncertainties vibration affected from the internal and external sources of the dam such as the flow of water vibration of the hydropower mechanical machine and other related sources has increased the insecurity of the dam structure. In this study, one of the oldest hydroelectric dams in Malaysia which are Chenderoh Dam in Kuala Kangsar, Perak is taken to analyze and discuss the structural dynamic analysis. The analysis has been investigated on the sector gate, right bank, intake and bottom outlet section of the dam structure. The actual size of structures (1:1) for each section has been modeled into the CAD software based on real build-in materials. Finite element (FE) model is constructed with the required boundary condition and meshing sensitivity analysis. From the result, the natural frequency values and mode of shapes are determined for all the section but, only significant value will be shown in this paper. The highest value of natural frequency occurred is 5.09�Hz at sector gate, 52.3�Hz at left bank, 11.73�Hz at right bank, 2.76�Hz at intake and 9.00�Hz at bottom outlet. In addition, from the frequency response friction (FRF) graphs show the highest deflection frequently occurred at x-axis direction for sector gate, right bank, bottom outlet, left bank and intake. All of these values must be taken into consideration before any failure happens at the dam. � 2020, Springer Nature Singapore Pte Ltd.
author2 57204677038
author_facet 57204677038
Radzi M.R.
Zawawi M.H.
Yusairah W.N.
Mazlan A.Z.A.
Abas A.
Zainol M.R.R.M.A.
format Book Chapter
author Radzi M.R.
Zawawi M.H.
Yusairah W.N.
Mazlan A.Z.A.
Abas A.
Zainol M.R.R.M.A.
spellingShingle Radzi M.R.
Zawawi M.H.
Yusairah W.N.
Mazlan A.Z.A.
Abas A.
Zainol M.R.R.M.A.
Natural Frequency Analysis for Hydropower Structure
author_sort Radzi M.R.
title Natural Frequency Analysis for Hydropower Structure
title_short Natural Frequency Analysis for Hydropower Structure
title_full Natural Frequency Analysis for Hydropower Structure
title_fullStr Natural Frequency Analysis for Hydropower Structure
title_full_unstemmed Natural Frequency Analysis for Hydropower Structure
title_sort natural frequency analysis for hydropower structure
publisher Springer
publishDate 2023
_version_ 1806425861595856896
score 13.222552